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Layered Antiferromagnetic Ordering in the Most Active Perovskite Catalysts for the Oxygen Evolution Reaction

机译:在最活跃的钙钛矿催化剂中分层反铁磁性排序,用于氧气进化反应

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摘要

We have performed an in-depth ab initio study of the magnetic structure within the most active perovskites for the oxygen evolution reaction. In all cases, the ground state exhibits an extended antiferromagnetic coupling in the unit cell. Layered antiparallel alignment of the magnetic moments appears to be related to their electrocatalytic activity. All the perovskites calculated within this paper show space-separated charge-transport channels depending on the spin orientation. Comparing the electronic structures with the reported activities, we find a direct correlation between the magnetic accumulation on the spin channels in the bulk material and the catalytic activity. We discuss the possible implications of such observations in terms of magnetic interactions. During oxygen evolution in water electrolysis, reactants and products do not preserve spin. For triplet state oxygen to evolve, the catalyst at the anode can speed up the reaction if it is able to balance the magnetism of the oxygen molecule by extracting electrons with an opposite magnetic moment, conserving the overall spin.
机译:我们已经在最活跃的钙质内进行了深入的AB初始研究,用于氧气进化反应。在所有情况下,地位在单元电池中表现出扩展的反铁磁耦合。磁矩的分层反平行对准似乎与其电催化活性有关。在本文中计算出的所有钙质都会显示空间分离的电荷传输通道,具体取决于旋转方向。将电子结构与报告的活动进行比较,我们在散装材料中的旋转通道上的磁性积聚与催化活性的磁性积聚之间的直接相关性。我们在磁相互作用方面讨论了这种观察的可能影响。在水电解中的氧气进化期间,反应物和产物不保持旋转。对于Triplet状态氧气进化,阳极处的催化剂可以通过提取具有相反磁矩的电子来平衡氧分子的磁性,从而节省整体旋转,加速反应。

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